Mathematical Representation of Voltage Regulation Impact on Distribution Feeder Voltages

Anand Kumar, S. Grijalva, J. Deboever, J. Peppanen, M. Rylander
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引用次数: 2

Abstract

Accurate representation of the impact of voltage regulation equipment (VRE) on distribution feeders is fundamental for assessing photovoltaic (PV) impacts and for many other applications in distribution planning and operations. VRE are frequently controlled based on the voltage observed at the VRE terminals. Conventionally, the operation of VRE is assessed by solving three-phase unbalanced power flows. Using conventional modeling approaches for applications such as PV hosting capacity can require solving prohibitively large number of power flows in order to capture the impact that VRE have on the network. In this paper, we explore the applicability of sensitivitybased modelling to estimate the controller voltages of tap changing transformers, line voltage regulators and capacitor banks on large-scale, complex three-phase unbalanced, radial distribution systems. The sensitivity-based model can estimate the VRE controller voltage based on the load and current state of discrete controllable elements in the circuit. The proposed model is shown to accurately estimate VRE controller voltages on both a modified IEEE-123 bus test feeder with 3 voltage regulating devices and on a realistic large-scale utility feeder with 12 voltage regulating devices. The proposed mathematical representation can be leveraged for fast determination of voltage in distribution application such as PV hosting capacity.
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电压调节对配电馈线电压影响的数学表示
准确表示电压调节设备(VRE)对配电馈线的影响是评估光伏(PV)影响以及配电规划和运营中的许多其他应用的基础。VRE通常是根据在VRE终端观察到的电压来控制的。传统上,通过求解三相不平衡潮流来评估VRE的运行情况。使用传统的建模方法,如光伏主机容量,可能需要解决大量的功率流,以捕捉VRE对网络的影响。在本文中,我们探讨了基于灵敏度的建模在大型、复杂的三相不平衡径向配电系统中估计分接变压器、线路稳压器和电容器组控制器电压的适用性。基于灵敏度的模型可以根据电路中离散可控元件的负载和电流状态来估计VRE控制器电压。结果表明,所提出的模型能够在带有3个调压装置的改进型IEEE-123母线测试馈线和带有12个调压装置的实际大型公用事业馈线上准确估计VRE控制器电压。所提出的数学表示可以用于快速确定配电应用中的电压,例如光伏主机容量。
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